Oda T, Makino K, Yamashita I, Namba K, Maéda Y
International Institute for Advanced Research, Matsushita Electric Industrial Co. Ltd., Seika, Kyoto 619-0237, Japan.
Biophys J. 2001 Feb;80(2):841-51. doi: 10.1016/S0006-3495(01)76063-8.
Lowering pH or raising salt concentration stabilizes the F-actin structure by increasing the free energy change associated with its polymerization. To understand the F-actin stabilization mechanism, we studied the effect of pH, salt concentration, and cation species on the F-actin structure. X-ray fiber diffraction patterns recorded from highly ordered F-actin sols at high density enabled us to detect minute changes of diffraction intensities and to precisely determine the helical parameters. F-actin in a solution containing 30 mM NaCl at pH 8 was taken as the control. F-actin at pH 8, 30 to 90 mM NaCl or 30 mM KCl showed a helical symmetry of 2.161 subunits per turn of the 1-start helix (12.968 subunits/6 turns). Lowering pH from 8 to 6 or replacing NaCl by LiCl altered the helical symmetry to 2.159 subunits per turn (12.952/6). The diffraction intensity associated with the 27-A meridional layer-line increased as the pH decreased but decreased as the NaCl concentration increased. None of the solvent conditions tested gave rise to significant changes in the pitch of the left-handed 1-start helix (approximately 59.8 A). The present results indicate that the two factors that stabilize F-actin, relatively low pH and high salt concentration, have distinct effects on the F-actin structure. Possible mechanisms will be discussed to understand how F-actin is stabilized under these conditions.
降低pH值或提高盐浓度可通过增加与F-肌动蛋白聚合相关的自由能变化来稳定其结构。为了理解F-肌动蛋白的稳定机制,我们研究了pH值、盐浓度和阳离子种类对F-肌动蛋白结构的影响。从高密度的高度有序F-肌动蛋白溶胶记录的X射线纤维衍射图谱使我们能够检测衍射强度的微小变化,并精确确定螺旋参数。以pH 8时含30 mM NaCl溶液中的F-肌动蛋白作为对照。pH 8、30至90 mM NaCl或30 mM KCl条件下的F-肌动蛋白显示出单起始螺旋每圈2.个亚基的螺旋对称性(12.968个亚基/6圈)。将pH从8降至6或用LiCl替代NaCl会将螺旋对称性改变为每圈2.159个亚基(12.952/6)。与27-A子午层线相关的衍射强度随着pH降低而增加,但随着NaCl浓度增加而降低。所测试的任何溶剂条件都未导致左手单起始螺旋的螺距发生显著变化(约59.8 Å)。目前的结果表明,稳定F-肌动蛋白的两个因素,即相对较低的pH值和高盐浓度,对F-肌动蛋白结构有不同的影响。将讨论可能的机制,以了解在这些条件下F-肌动蛋白是如何被稳定的。